首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Failure analysis of a lattice transmission tower collapse due to the super typhoon Rammasun in July 2014 in Hainan Province, China
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Failure analysis of a lattice transmission tower collapse due to the super typhoon Rammasun in July 2014 in Hainan Province, China

机译:中国省海南省超大台风仓库覆盖晶格传输塔崩溃的故障分析

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The failure mechanisms of lattice transmission towers under the extreme wind conditions of typhoons are not well known and such knowledge is important for the improvement of overhead transmission line (OHL) design and to ensure the safe operation of transmission lines in typhoon-prone areas. This paper presents a case study on failure analysis of 13 collapsed lattice transmission towers in al 10 kV transmission line during the super typhoon Rammasun that occurred in July 2014 in Hainan Province of China. A systematic computational procedure was developed to conduct the failure analysis with particular focus on modeling the fluctuating turbulent wind loads combined with the heavy rain loads. The results show that the failure mode and location obtained from the dynamic analysis are in good agreement with the post-event field observations. The collapse of the suspension lattice transmission towers was triggered by the buckling of the main leg members in the third panel from the ground level due to the extreme high axial stresses. Key design suggestions like improving the design wind speed and adopting an equal-strength beam approach are proposed to reduce the risk of lattice transmission tower failure and ensure continued serviceability and safe operations under the typhoon-wind conditions.
机译:晶格传动塔在台风极端风条件下的故障机制尚不公不闻性,并且这些知识对于改进顶部传输线(OHL)设计是重要的,并确保在台风 - 易发区域中的传输线路安全操作。本文介绍了在中国海南省7月举行的超大台风射线输电线13折叠晶格传输塔故障分析案例研究。制定了系统的计算程序,以进行故障分析,特别关注模拟波动湍流风荷载与大雨载荷相结合。结果表明,与动态分析中获得的故障模式和位置​​与事件后现场观测吻合良好。由于极端高轴向应力,通过第三面板中的主腿部构件的屈曲触发悬架晶格传动塔的坍塌引发。提出了改善设计风速和采用同等强度光束方法的关键设计建议,以降低格子传输塔故障的风险,并确保在台风风条件下继续维修和安全运行。

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